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3D porous poly(L-lactic acid) materials with controllable multi-scale microstructures and their potential application in oil-water separation

机译:可控多尺度微结构的3D多孔聚L-乳酸材料及其在油水分离中的潜在应用

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摘要

Hydrophobic PLLA porous materials exhibits excellent oil-removal performance, fabricated by a simple slow solvent-evaporation induced precipitation method, which is of significance for curbing oil-pollution environment. Therefore, porous PLLA materials with tunable microstructures (fibrous networks, microsphere and multiple structures) were conveniently manufactured by adjusting the preparation parameters, solution concentration and precipitation temperature. The results show the wettability of the prepared porous materials could be controlled by the tailorable hierarchical structures. The apparent contact angle of porous PLLA materials was 121% significantly improved in contrast with 67 degrees of the solvent-casting bulk PLLA film. Moreover, the PLLA materials with high porosity up to 48.4% were obtained from 5 wt% PLLA chloroform solution at the precipitating temperature of 30 degrees C. Predictably, due to the favorable porosity and the excellent surface hydrophobicity, the porous PLLA materials have great potential in the wild application of oil-water separation.
机译:疏水性PLLA多孔材料具有优异的除油性能,采用简单的缓慢溶剂蒸发诱导沉淀法制备,对控制油污环境具有重要意义。因此,通过调节制备参数,溶液浓度和沉淀温度,可以方便地制备具有可调微结构(纤维网络,微球和多种结构)的多孔PLLA材料。结果表明,所制备的多孔材料的润湿性可以通过可调节的分层结构来控制。多孔PLLA材料的表观接触角明显提高了121%,而溶剂浇铸体PLLA薄膜的表面接触角为67度。此外,在30℃的沉淀温度下,由5重量%的PLLA氯仿溶液获得具有高达48.4%的高孔隙率的PLLA材料。可以预见的是,由于有利的孔隙率和优异的表面疏水性,多孔PLLA材料具有很大的潜力。在油水分离的野外应用。

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